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Commonly Used In Steel Smelting Casting Furnace Lining Flame Equipment Magnesium Oxide (MgO)
Product Introduction
Magnesium oxide (MgO, CAS 1309-48-4) is an inorganic mineral oxide produced primarily through high-temperature calcination of magnesite (MgCO₃) or magnesium hydroxide (Mg(OH)₂). It is a white, hygroscopic solid mineral that occurs naturally as periclase, crystallizing in a cubic rock-salt structure with strong ionic bonding between Mg²⁺ and O²⁻ ions.
With a molecular weight of 40.30 g/mol, MgO delivers the highest elemental magnesium content (~60 wt%) among all magnesium sources. It is characterized by an exceptionally high melting point of 2852°C, a bulk density ranging from 0.1 to 0.5 g/mL depending on grade, and a saturated aqueous solution pH of 10.3, reflecting its strong alkaline nature.
Magnesium oxide finds critical applications spanning multiple industries, including high-temperature refractories, electrical insulators, dietary supplements, water treatment, agriculture (as fertilizer and feed additive), construction materials, and catalytic supports. Its commercial significance is driven by its acid-neutralizing capacity, thermal stability, and cost-effectiveness relative to organic magnesium salts and alternative basic oxides.
Parameters (Table)
Property
Value
Molecular Weight
40.30 g/mo
EINECS Number
215-171-9
Melting Point
2800–2852 °C
Boiling Point
3600 °C
Densit
3.58 g/cm³(20 °C)
pH (Sat. Solution)
10.3(20 °C)
Refractive Index
1.736
Product Features
High Thermal Stability MgO possesses an exceptionally high melting point of 2852°C and boiling point of 3600°C, enabling stable performance in extreme high-temperature environments. Its thermal conductivity ranges from 40 to 60 W/(m·K) at room temperature, superior to many other ceramic insulators.
Superior Electrical Insulation With a wide bandgap of approximately 7.8 eV and dielectric constant of 9.6, MgO demonstrates outstanding electrical insulation properties suitable for high-voltage applications. It is widely used as an insulating filler in mineral-insulated cables and heating elements.
Chemical Stability and Inertness MgO remains chemically stable at elevated temperatures and is inert toward high-alumina refractories up to 1540°C. It exhibits excellent resistance to heat, slag, and corrosion.
Buffered Alkalinity Unlike strong alkalis (NaOH, Ca(OH)₂) that produce rapid, steep pH increases with high overshoot risk, MgO provides controlled, buffered neutralization with a natural pH ceiling of 10.3. This inherent buffering capacity prevents excessive alkalinity and system damage.
High Elemental Magnesium Content MgO delivers ~60 wt% elemental magnesium—3.75× more per gram than magnesium citrate—enabling compact, high-potency formulations with drastically reduced excipient load.
Versatile Physical Forms Commercially available in light (fluffy, high surface area, low bulk density) and heavy (dense, low surface area, high bulk density) grades, produced at different calcination temperatures (400–800°C for light; >1000°C for heavy).
Non-Toxicity and Environmental Friendliness MgO is non-toxic, odorless, and environmentally friendly, making it suitable for use in medicine, food additives, and biotechnological applications.
Product Advantages
Cost-Effectiveness — MgO provides a 275% mass efficiency advantage over magnesium citrate, significantly reducing raw material costs for cost-sensitive nutraceutical and dietary supplement formulations. Its low raw material price combined with high thermal conductivity (2–3× higher than Al₂O₃) offers exceptional cost-effectiveness.
Superior Thermal Performance — With a melting point of 2852°C and thermal conductivity of 40–60 W/(m·K), MgO withstands temperatures exceeding 2000°C while maintaining structural integrity. Its low thermal expansion coefficient (~13 × 10⁻⁶ K⁻¹) provides excellent thermal shock resistance.
Precise pH Control — MgO's buffered neutralization mechanism offers a significant safety and process control advantage over strong alkalis in water treatment and dietary antacid applications, reducing the risk of corrosion, equipment damage, or mucosal irritation.
Multi-Industry Versatility — MgO serves critical functions across diverse industries—from refractory linings in steelmaking furnaces and cement kilns, to electrical insulators, catalyst supports, CO₂ adsorbents, agricultural soil amendments, and dietary antacids.
Regulatory Compliance — Available in USP/FCC/EP grades with multi-compendial compliance, MgO meets stringent quality standards for food, feed, and dietary supplement applications. KOSHER and HALAL certified options are available.
Enhanced Formulation Efficiency — Light MgO provides superior flowability and compressibility for direct compression tableting, while Heavy MgO offers higher mass per volume, reducing capsule fill volume in supplement formulations.
Sustainable and Biocompatible — MgO's non-toxic nature and biocompatibility have led to emerging applications in biomedical implants and tissue engineering scaffolds. Its use in agriculture as a soil amendment improves crop yields and addresses magnesium deficiencies in soil.
Applications
Refractories – linings for furnaces, kilns, crucibles.
Water & wastewater – acid neutralisation, heavy metal precipitation, phosphate removal.
Electrical insulation – filler in mineral‑insulated cables and heating elements.
Construction – magnesium oxychloride cements, fireproof boards.
Catalysis & adsorption – catalyst support and CO₂ capture.
Technical
Production – calcination of magnesite or Mg(OH)₂ at 400–1000 °C (light grade) or >1000 °C (heavy grade).
Grades – purity from 85 % (industrial) to 99.99 % (high‑purity 4N); light (bulk density ≤0.15 g/mL) and heavy (≥0.25 g/mL).
Key parameters – MgO content, loss on ignition, particle size distribution, specific surface area, and acid‑neutralising capacity.
Standards – compliant with USP, FCC, EP, and other national pharmacopoeias where applicable.
Principle (Mechanism of Action)
Buffered alkalinity – MgO hydrolyses slowly in water to Mg(OH)₂, releasing OH⁻ ions but capping pH at ≈10.3, avoiding sudden over‑alkalisation.
Thermal resistance – ionic crystal structure with very high melting point (2852 °C) and low thermal expansion, providing exceptional heat endurance.
Adsorption & reactivity – porous surface (especially light grade) enables physical adsorption of impurities and chemical reaction with acidic species.
Cementitious reaction – reacts with MgCl₂ or MgSO₄ to form strong, fire‑resistant oxychloride/sulphate cements.
Services
Customisation – particle size, bulk density, purity level, and packaging (bags, big bags, drums) tailored to client needs.
Technical support – formulation advice, processing optimisation, and application troubleshooting.
Sample service – free or small‑charge samples for qualification trials.
Documentation – full COA, SDS, and regulatory certificates (Kosher, Halal, GMP) provided.
Logistics – global shipping with proper handling and storage guidance.
After‑sales – quality feedback, continuous improvement, and dedicated account management.
Company Details
Bronze Gleitlager
,
Bronze Sleeve Bushings
and
Graphite Plugged Bushings
from Quality China Factory
Business Type:
Manufacturer
Year Established:
2010
Total Annual:
25,000,000-27,000,000
Employee Number:
100~150
Ecer Certification:
Verified Supplier
Shandong Jiurunfa Chemical Technology Co., Ltd. is an energy and chemical enterprise engaged in the research, development, production, sales and service of industrial gases, special gases, mixed gases and chemical products. The company is located in the Economic Development Zone of Jinan City, Shand... Shandong Jiurunfa Chemical Technology Co., Ltd. is an energy and chemical enterprise engaged in the research, development, production, sales and service of industrial gases, special gases, mixed gases and chemical products. The company is located in the Economic Development Zone of Jinan City, Shand...